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A FRACTURE MECHANICS STUDY OF THERMALLY MODIFIED BEECH FOR STRUCTURAL APPLICATIONS

机译:结构化应用热改性贝基的断裂力学研究

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Thermal modification of wood is an established alternative to other preservative treatments that may be aggressive to the environment. When the use of thermally modified wood in structural applications is envisioned, the fracture properties become extremely important due to the significant increase in brittleness. In the work reported herein, the fracture toughness of thermally modified beech (Fagus sylvatica L) under Mode I loading was quantified using Compact-Tension (CT) specimens, loaded under steady-state crack propagation conditions. The influence of three heat treatments levels and three moisture contents, as well as two crack propagation systems (RL and TL) was studied. Complete load-displacement records were analysed and the critical stress intensity factor, K_(Ic), and specific fracture energy, G_f, evaluated. Thermal modification was found to significantly affect the material behaviour; the more severe the thermal treatment, the lower the values of K_(Ic) and G_f, with less difference being observed between the most severe treatments. Moisture content was also found to influence fracture toughness, but had a much less significant effect than the heat treatment.
机译:木材的热改性是对环境具有侵蚀性的其他防腐处理方法的既定选择。当设想在结构应用中使用热改性木材时,由于脆性的显着增加,断裂性能变得极为重要。在本文报道的工作中,使用紧凑型拉伸(CT)标本对在稳态裂纹扩展条件下加载的I型载荷下的热改性榉木(Fagus sylvatica L)的断裂韧性进行了定量。研究了三个热处理水平和三个水分含量以及两个裂纹扩展系统(RL和TL)的影响。分析了完整的载荷-位移记录,并评估了临界应力强度因子K_(Ic)和比断裂能G_f。发现热改性会显着影响材料的性能。热处理越严格,K_(Ic)和G_f的值越低,在最严格的处理之间观察到的差异就越小。还发现水分会影响断裂韧性,但其效果远不如热处理。

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